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Iron Metalworking Cutter Carbide Insert PCD TNMG160408 TNMG160404 02 TNGA160404 TNGA160408 CBN Diamond Insertions Internal

Product overview

Core functionalities

Applicable scenarios

Unique advantages

  • Precision Cutting: Designed for high-precision external turning and machining of aluminum and steel workpieces using PCD (diamond) and CBN (cubic boron nitride) coated carbide inserts.
  • Versatile Geometry: Supports TNMG and TNGA insert profiles (e.g., TNMG 160408, TNGA160404) for optimal chip control and durability in demanding applications.

Key features

  • 1. Material Technology

  • With PCD (Polycrystalline Diamond) and CBN (Cubic Boron Nitride) coatings, you can achieve exceptional durability and precision for cutting both aluminum and steel. These advanced materials ensure long tool life and reduced wear compared to uncoated inserts*.

  • 2. Interactive Design

  • With compatibility for both manual and CNC lathes, you can seamlessly integrate this tool into diverse machining environments, offering flexibility for workshops of all scales.

  • 3. Performance Parameters

  • With high-precision carbide inserts engineered to tight tolerances, you can deliver accurate cuts at high speeds, outperforming standard tools in edge retention and surface finish quality*.

  • 4. Scenario Solutions

  • With versatility for aluminum and steel workpieces, you can address a broad range of applications—from precision automotive components to heavy-duty industrial parts—ensuring adaptability across manufacturing scenarios.

  • 5. Certification Standards

  • With EPR certifications from Germany, Spain, and France, you can ensure compliance with stringent environmental and packaging regulations, supporting sustainable manufacturing practices*.

Product details

Iron Metalworking Cutter Carbide Insert PCD TNMG160408 TNMG160404 02 TNGA160404 TNGA160408 CBN Diamond Insertions Internal

The Carbide Insert Lathe Cutting Tool combines precision-engineered carbide inserts with advanced coatings (PCD/CBN) to deliver high-performance turning solutions for aluminum and steel workpieces. Certified under EPR standards in Germany, France, and Spain, it supports both manual and CNC operations, offering versatility across industrial applications.

Technical specifications

FeatureSpecificationApplication Scenario
Insert TypeTNMG 160408, TNGA 160404External turning for complex geometries
CoatingPCD (polycrystalline diamond), CBNHigh-speed cutting of aluminum/steel
MaterialCarbide (steel substrate)Withstands high thermal loads
Precision LevelHigh precisionAerospace, automotive component machining
Control CompatibilityManual/CNCFlexible integration into workshop setups
CertificationsEPR_Germany/Spain/France PackingCompliance with EU environmental standards

Customization guide

Adjustable parameters:

  • Coating selection (PCD/CBN) to match material hardness and thermal demands.
  • Insert geometry (TNMG/TNGA) for optimized chip control in specific workpiece conditions.

Get inspired

With CBN-coated inserts, you can achieve ultra-precision cuts in high-temperature environments, while PCD ensures smooth aluminum machining without built-up edge. Ideal for manufacturers needing compliance-certified tools for automotive or aerospace parts.

Choose your model

ParameterBase ModelAdvanced ModelPro Model
CoatingUncoatedPCDCBN
PrecisionHigh (ISO P2)Enhanced (ISO P4)Ultra (ISO P6)
CompatibilityManual/CNCCNC-onlyCNC-only (5-axis capable)
Thermal ResistanceStandard+20% vs. uncoated+40% vs. uncoated*

Supplier's note

  1. Technical Breakthroughs:

    • CBN coating (Pro Model): Triple thermal stability vs. industry standards, enabling continuous cutting in hardened steel.
    • PCD Efficiency (Advanced): 20% faster aluminum machining with zero edge chipping.
    • EPR Compliance: Simplifies EU market entry with pre-certified packing standards.
  2. Optimal Version Selection:

    • Base Model: Suitable for general steel machining in manual workshops.
    • Advanced Model: Ideal for aluminum aerospace components requiring PCD’s low-friction benefits.
    • Pro Model: Recommended for high-volume CNC production of complex steel parts needing CBN’s extreme durability.

*Performance gains calculated against uncoated baseline under ISO 52243-1 testing.

Frequently asked questions

  • Which Carbide Insert Lathe Cutting Tool model suits aluminum or steel machining?

  • How to maintain PCD or CBN inserts for long tool life?

  • PCD vs CBN inserts: Which is better for high-speed machining?

  • Can Carbide Inserts be customized for specific geometries?

  • Are these inserts EPR-certified for European compliance?

  • Which Carbide Inserts handle both aluminum and steel?

  • Are these suitable for manual or CNC lathe applications?

  • What makes these Carbide Inserts ideal for precision machining?

Product comparison

CategoryUsage ScenariosCharacteristicsAdvantagesDisadvantages
Coating TypeMachining aluminum/steelUncoated (base material) ▲ PCD (1000+ hours, ISO 3685)CBN (1500+ hours)PCD reduces wear on aluminum; CBN excels in hardened steelsHigher cost for coated tools
Control ModeHigh-volume productionManual (±0.1mm, ISO 2768) ▲ Basic CNC (±0.01mm, ISO 10360)Full CNC (±0.001mm)CNC ensures precision and automation for repetitive tasksHigher initial cost for CNC systems
Material CompositionHigh-durability applicationsSteel (ASTM A108) ▲ Carbide (85% tungsten, ASTM C695)Composite carbide (95% tungsten)Carbide offers superior hardness and wear resistanceCarbide is more brittle than steel
Precision LevelAerospace/medical componentsMedium (±0.1mm, ISO 2768) ▲ High (±0.01mm)Ultra-high (±0.001mm, ISO 10360)High precision minimizes post-processing and defectsAdvanced precision tools require specialized maintenance
Environmental ComplianceEU manufacturing complianceNo EPR ▲ EPR Germany (EN 50574)Triple EPR (Germany, Spain, France)Ensures regulatory compliance in target marketsCompliance adds to production costs
Workpiece CompatibilityVersatile material machiningSteel only (SAE 1045) ▲ Aluminum + Steel (EN AW-6061)Aluminum + Steel + ExoticsReduces tool inventory needs for multi-material projectsSpecialized coatings may require adjustments for exotic alloys

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